Title of article :
Effect of ZnO Addition on Structural Properties of ZnO-PANi/Carbon Black Thin Films
Author/Authors :
BINTI MAT TAHIR, SITI FARIZA Universiti Kebangsaan Malaysia - Faculty Science and Technology - School of Applied Physics, Malaysia , RAMLI, NORHASHIMAH Universiti Kebangsaan Malaysia - Faculty of Science Technology - School of Applied Physics, Malaysia , IZZUDDIN, IZURA Universiti Kebangsaan Malaysia - Faculty Science and Technology - School of Applied Physics, Malaysia , MAT SALLEH, MUHAMAD Universiti Kebangsaan Malaysia - Institute of Microengineering and Nanoelectronics (IMEN), Malaysia , YAHAYA, MUHAMMAD Universiti Kebangsaan Malaysia - Faculty of Science and Technology - School of Applied Physics, Malaysia , UMAR, AKRAJAS ALI Universiti Kebangsaan Malaysia - Institute of Microengineering and Nanoelectric (IMEN), Malaysia , HAJI JUMALI, MOHAMMAD HAFIZUDDIN Universiti Kebangsaan Malaysia - Faculty of Science Technology - School of Applied Physics, Malaysia
From page :
1001
To page :
1004
Abstract :
The aim of this project was to investigate the effect of ZnO addition on the structural properties of ZnO-PANi/carbon black thin films. The sol gel method was employed for the preparation of ZnO sol. The sol was dried for 24 h at 100°C and then annealed at 600°C for 5 h. XRD characterization of the ZnO powder showed the formation of wurtzite type ZnO crystals. The ZnO powder were mixed into PANi/carbon black solution which was dissolved into M-Pyrol, N-Methyl-2-Pyrrolidinone (NMP) to produce a composite solution of ZnO-PANi/carbon black. The weight ratio of ZnO were 4 wt%, 6 wt% and 8 wt%. The composite solutions were deposited onto glass substrates using a spin-coating technique to fabricate ZnO-PANi/carbon black thin films. AFM characterization showed the decreasing of average roughness from 7.98 nm to 2.23 nm with the increment of ZnO addition in PANi/carbon black films. The thickness of the films also decreased from 59.5 nm to 28.3 nm. FESEM image revealed that ZnO-PANi/carbon black thin films have changed into agglomerated surface morphology resulting in the increment of porosity of the films.
Keywords :
Sol gel method , spin coating technique , structural properties , ZnO thin film
Record number :
2555469
Link To Document :
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